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GENETICS AND MOLECULAR BIOLOGY

Specificity and Genetic Polymorphism of theBacillus Competence Quorum-Sensing System

P. Tortosa, L. Logsdon, B. Kraigher, Y. Itoh, I. Mandic-Mulec, D. Dubnau
P. Tortosa
Public Health Research Institute, New York, New York 10016;
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L. Logsdon
Public Health Research Institute, New York, New York 10016;
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B. Kraigher
Public Health Research Institute, New York, New York 10016;
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Y. Itoh
Division of Applied Microbiology, National Food Research Institute, Ministry of Agriculture, Forestry and Fisheries, Kannondai 2-1-2, Tsukuba, Ibaraki 305-8642, Japan; and
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I. Mandic-Mulec
University of Ljubljana, 1000 Ljubljana, Slovenia
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D. Dubnau
Public Health Research Institute, New York, New York 10016;
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DOI: 10.1128/JB.183.2.451-460.2001
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ABSTRACT

A quorum-sensing mechanism involving the pheromone ComX and the ComP-ComA two-component system controls natural competence inBacillus subtilis. ComX is expressed as a cytoplasmic inactive precursor that is released into the extracellular medium as a cleaved, modified decapeptide. This process requires the product ofcomQ. In the presence of ComX, the membrane-localized ComP histidine kinase activates the response regulator ComA. We compared the sequences of the quorum-sensing genes from four closely related bacilli, and we report extensive genetic polymorphism extending throughcomQ, comX, and the 5′ two-thirds ofcomP. This part of ComP encodes the membrane-localized and linker domains of the sensor protein. We also determined the sequences of the comX genes of four additional wild-type bacilli and tested the in vivo activities of all eight pheromones on isogenic strains containing four different ComP receptor proteins. A striking pattern of specificity was discovered, providing strong evidence that the pheromone contacts ComP directly. Furthermore, we show that coexpression of comQ and comX inEscherichia coli leads to the production of active pheromone in the medium, demonstrating that comQ is the only dedicated protein required for the processing, modification, and release of active competence pheromone. Some of the implications of these findings for the evolution and the mechanism of the quorum-sensing system are discussed.

  • Copyright © 2001 American Society for Microbiology
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Specificity and Genetic Polymorphism of theBacillus Competence Quorum-Sensing System
P. Tortosa, L. Logsdon, B. Kraigher, Y. Itoh, I. Mandic-Mulec, D. Dubnau
Journal of Bacteriology Jan 2001, 183 (2) 451-460; DOI: 10.1128/JB.183.2.451-460.2001

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Specificity and Genetic Polymorphism of theBacillus Competence Quorum-Sensing System
P. Tortosa, L. Logsdon, B. Kraigher, Y. Itoh, I. Mandic-Mulec, D. Dubnau
Journal of Bacteriology Jan 2001, 183 (2) 451-460; DOI: 10.1128/JB.183.2.451-460.2001
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KEYWORDS

Bacillus
Bacterial Proteins
membrane proteins
Pheromones
Polymorphism, Genetic
signal transduction
Transferases

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